We introduce a simple approach for the efficient generation of tunable narrow-bandwidth picosecond pulses synchronized to broadband femtosecond ones. Second harmonic generation in the presence of large group velocity mismatch between the interacting pulses transfers a large fraction of the energy of a broadband fundamental frequency pulse into a narrowband second harmonic one. Using a periodically poled stoichiometric lithium tantalate crystal coupled to an infrared optical parametric amplifier, we generated 200-nJ pulses with spectral width lower than 8.5 cm-1 and tunability from 720 to 890 nm. Energy scaling and extension of the tuning range are straightforward
We investigate numerically the second-harmonic generation from near infrared 100 fs pulses in period...
We investigate numerically the second-harmonic generation from near infrared 100 fs pulses in period...
International audienceWe demonstrate efficient generation of picosecond narrow-bandwidth pulses by f...
We introduce a simple approach for the efficient generation of tunable narrow-bandwidth picosecond p...
We exploit second-harmonic generation with large group velocity mismatch to efficiently convert femt...
We exploit second-harmonic generation with large group velocity mismatch to efficiently convert femt...
We exploit second-harmonic generation with large group velocity mismatch to efficiently convert femt...
Second-harmonic-generation in lithium-tantalate crystals with engineered quasi-phase-matching struct...
Second-harmonic-generation in lithium-tantalate crystals with engineered quasi-phase-matching struct...
Second-harmonic-generation in lithium-tantalate crystals with engineered quasi-phase-matching struct...
International audienceNarrow-bandwidth picosecond pulses of predetermined spectral and temporal shap...
Narrow-bandwidth picosecond pulses of predetermined spectral and temporal shapes are generated with ...
Narrow-bandwidth picosecond pulses of predetermined spectral and temporal shapes are generated with ...
Spectral blue- and red-shifts in a range of 100 nm are achieved by propagating 40 fs pulses with a 7...
Spectral blue- and red-shifts in a range of 100 nm are achieved by propagating 40 fs pulses with a 7...
We investigate numerically the second-harmonic generation from near infrared 100 fs pulses in period...
We investigate numerically the second-harmonic generation from near infrared 100 fs pulses in period...
International audienceWe demonstrate efficient generation of picosecond narrow-bandwidth pulses by f...
We introduce a simple approach for the efficient generation of tunable narrow-bandwidth picosecond p...
We exploit second-harmonic generation with large group velocity mismatch to efficiently convert femt...
We exploit second-harmonic generation with large group velocity mismatch to efficiently convert femt...
We exploit second-harmonic generation with large group velocity mismatch to efficiently convert femt...
Second-harmonic-generation in lithium-tantalate crystals with engineered quasi-phase-matching struct...
Second-harmonic-generation in lithium-tantalate crystals with engineered quasi-phase-matching struct...
Second-harmonic-generation in lithium-tantalate crystals with engineered quasi-phase-matching struct...
International audienceNarrow-bandwidth picosecond pulses of predetermined spectral and temporal shap...
Narrow-bandwidth picosecond pulses of predetermined spectral and temporal shapes are generated with ...
Narrow-bandwidth picosecond pulses of predetermined spectral and temporal shapes are generated with ...
Spectral blue- and red-shifts in a range of 100 nm are achieved by propagating 40 fs pulses with a 7...
Spectral blue- and red-shifts in a range of 100 nm are achieved by propagating 40 fs pulses with a 7...
We investigate numerically the second-harmonic generation from near infrared 100 fs pulses in period...
We investigate numerically the second-harmonic generation from near infrared 100 fs pulses in period...
International audienceWe demonstrate efficient generation of picosecond narrow-bandwidth pulses by f...